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Analytical modelling of a tunnel accounting for elastoplastic unloading and reloading with reverse yielding and plastic flow

机译:隧道占弹塑性卸料和重新加载塑性流动的分析模型

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Applying a high internal pressure inside an underground cavity can increase the extent or intensity of the Excavation Damaged Zone (EDZ). This issue arises in many situations: the geological disposal of radioactive waste where different swelling materials can be encountered (engineered barriers, ...), in-situ pressuremeter tests, gas storage projects, etc. This paper presents an analytical approach of the elastoplastic behaviour of a tunnel subjected to a simplified 2-stage loading under the assumption of small strains. In stage-1 (unloading), its excavation is represented in a classical way by cancelling the fictitious internal pressure initially applied to the wall of the future tunnel. In gage-2 (reloading), the internal pressure is increased up to relatively high values. The mechanical behaviour considered is elastic-perfectly-plastic, obeying Tresca's yield criterion and its associated flow rule. In both stages, the elastic phase preceding yielding is considered. During stage-2, the reversed direction of the stress path compared to stage-1 induces reverse yielding, reversing the direction of plastic strain rates. A fully analytical solution is presented, where all field quantities can be assessed by entirely explicit equations. Notably, the critical values of the internal pressure for which yielding resumes, then further extends, are presented.
机译:在地下腔内施加高内部压力可以增加挖掘损坏区域(EDZ)的范围或强度。在许多情况下出现了这个问题:放射性废物的地质处理,其中不同的膨胀材料可以遇到(工程屏障,......),原位加压仪测试,储气项目等。本文提出了弹塑性塑料的分析方法在小菌株的假设下经受简化的2级负载的隧道的行为。在阶段-1(卸载)中,通过取消最初施加到未来隧道墙壁的虚拟内部压力,以经典的方式以经典的方式表示其挖掘。在Gage-2(重新加载)中,内部压力增加到相对高的值。考虑的机械行为是弹性完美的,遵循Tresca的收益率标准及其相关的流量规则。在两个阶段,考虑产量之前的弹性相。在第2阶段期间,应力路径的反向方向与阶段-1相比诱导反向屈服,逆转塑性应变率的方向。提出了完全分析的解决方案,其中可以通过完全显式方程来评估所有场数量。值得注意的是,提出了屈服简历的内部压力的临界值,然后进一步延伸。

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